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Potential of global croplands and bioenergy crops for climate change mitigation through deployment for enhanced weathering

机译:通过部署增强风化的全球农作物和生物能源作物的潜力

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Conventional row crop agriculture for both food and fuel is a source of carbon dioxide (CO2) and nitrous oxide (N2O) to the atmosphere, and intensifying production on agricultural land increases the potential for soil C loss and soil acidification due to fertilizer use. Enhanced weathering (EW) in agricultural soils applying crushed silicate rock as a soil amendment is a method for combating global climate change while increasing nutrient availability to plants. EW uses land that is already producing food and fuel to sequester carbon (C), and reduces N2O loss through pH buffering. As biofuel use increases, EW in bioenergy crops offers the opportunity to sequester CO2 while reducing fossil fuel combustion. Uncertainties remain in the long-term effects and global implications of large-scale efforts to directly manipulate Earth's atmospheric CO2 composition, but EW in agricultural lands is an opportunity to employ these soils to sequester atmospheric C while benefitting crop production and the global climate.
机译:食物和燃料的常规行作物农业是二氧化碳(CO2)和氧化亚氮(N 2 O)的源,并强化农业土地生产增加了由于施肥引起的土壤C损失和土壤酸化的潜力。在农业土壤中增强风化(EW),将碎硅酸盐作为土壤修正为土壤修正是一种打击全球气候变化的方法,同时提高植物的营养可用性。 EW使用已经生产食物和燃料的土地来螯合碳(C),并通过pH缓冲降低N2O损失。随着生物燃料使用的增加,生物能源作物中的EW提供了在减少化石燃料燃烧的同时隔离二氧化碳的机会。不确定因素仍然是长期效应和全球大规模努力的影响,直接操纵地球的大气二氧化碳组成,但农业土地的EW是雇用这些土壤的机会,以便促进作物生产和全球气候的同时融入大气C。

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